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首页> 外文期刊>The Astrophysical journal >MULTIWAVELENGTH OBSERVATIONS OF SHORT-TIMESCALE VARIABILITY IN NGC 4151. I. ULTRAVIOLET OBSERVATIONS
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MULTIWAVELENGTH OBSERVATIONS OF SHORT-TIMESCALE VARIABILITY IN NGC 4151. I. ULTRAVIOLET OBSERVATIONS

机译:NGC 4151中短时变数的多波长观测。I.紫外观测

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摘要

We present the results of an intensive ultraviolet monitoring campaign on the Seyfert 1 galaxy NGC 4151, as part of an effort to study its short-timescale variability over a broad range in wavelength. The nucleus of NGC 4151 was observed continuously with the International Ultraviolet Explorer for 9.3 days, yielding a pair of LWP and SWP spectra every ~70 minutes, and during 4 hr periods for 4 days prior to and 5 days after the continuous-monitoring period. The sampling frequency of the observations is an order of magnitude higher than that of any previous UV monitoring campaign on a Seyfert galaxy. The continuum fluxes in bands from 1275 to 2688 A went through four significant and well-defined " events " of duration 2-3 days during the continuous-monitoring period. We find that the amplitudes of the continuum variations decrease with increasing wavelength, which extends a general trend for this and other Seyfert galaxies to smaller timescales (i.e., a few days). The continuum variations in all the UV bands are simultaneous to within an accuracy of ~0.15 days, providing a strict constraint on continuum models. The emission-line light curves show only one major event during the continuous monitoring (a slow rise followed by a shallow dip) and do not correlate well with continuum light curves over the short duration of the campaign, because the timescale for continuum variations is apparently smaller than the response times of the emission lines.
机译:我们介绍了对Seyfert 1星系NGC 4151进行密集紫外线监测活动的结果,作为研究其在宽波长范围内的短时尺度变化的努力的一部分。用国际紫外线探测器连续观测NGC 4151的核9.3天,每〜70分钟产生一对LWP和SWP光谱,并在连续监测期之前和之后的5天的4个小时内产生4小时。观测的采样频率比塞弗特星系上任何先前的紫外线监测活动的采样频率高一个数量级。在连续监测期间,从1275至2688 A的频带中的连续通量经历了持续2-3天的四个重要且定义明确的“事件”。我们发现连续变化的幅度随着波长的增加而减小,这将这个塞弗特星系和其他塞弗特星系的总体趋势扩展到更短的时间范围(即几天)。所有紫外波段的连续谱变化在〜0.15天的精度内是同时发生的,这对连续谱模型提供了严格的约束。发射线的光曲线在连续监测过程中仅显示一个主要事件(缓慢上升,然后浅倾),并且在运动的短时间内与连续光曲线没有很好的相关性,因为连续变化的时间尺度显然是小于发射线的响应时间。

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